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首页> 外文期刊>Wireless personal communications: An Internaional Journal >On Spectrum Trading for 5G Cognitive Spectrum Sharing Networks with Hybrid Access: A Game-Theoretic Approach
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On Spectrum Trading for 5G Cognitive Spectrum Sharing Networks with Hybrid Access: A Game-Theoretic Approach

机译:关于5G认知频谱共享网络的频谱交易:一种游戏 - 理论方法

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摘要

Cognitive radio (CR) networks employing dynamic spectrum access have been proposed in the framework of enabling 5G wireless networks to enhance efficient use of spectrum resources. Communication requirements with regard to spectrum in 5G networks demand dynamic spectrum access giving rise to new types of spectrum markets and spectrum trading issues. Cognitive secondary users (SUs) may employ opportunistic spectrum access (OSA) to access vacant frequency bands (FBs) primarily allocated to primary users provided that they do not cause interference. Moreover, the SUs can employ exclusive spectrum access (ESA) in FBs leased at a certain price. In this work, different types of spectrum operators (SOs) are considered with regard to the type of spectrum access offered to SUs. A novel two-stage spectrum access and pricing game is proposed for two scenaria, namely: (1) a duopoly comprising an opportunistic SO and an exclusive SO and (2) a monopoly of a hybrid SO offering both ESA and OSA. In the first stage of the game, non coordinated SUs choose the access option that maximizes their utility. This symmetric N-SU spectrum access selection game has a unique mixed strategy equilibrium which depends: (1) on the prices set by the SOs in either the duopoly or the monopoly examined and (2) on the bandwidth available to the SUs under each scenario. In the second stage of the game, the bandwidth-pricing policy planned by the SOs is determined as the solution to an optimization problem maximizing the SOs revenues at the SUs equilibrium. Two algorithms are proposed to solve the optimization problems arising in each scenario examined. The numerical results obtained under the two spectrum market scenaria demonstrate how the proposed two-stage spectrum access and pricing scheme behaves for various network parameters.
机译:在启用5G无线网络的框架中提出了采用动态频谱访问的认知无线电(CR)网络,以增强频谱资源的有效利用。在5G网络中关于频谱的通信要求需求动态频谱访问,从而产生新型的频谱市场和频谱交易问题。认知二级用户(SUS)可以采用机会频谱访问(OSA)来访问主要分配给主要用户的空置频段(FB),则提供它们不会导致干扰。此外,SUS可以以一定价格使用FBS中的独家频谱访问(ESA)。在这项工作中,考虑了不同类型的频谱运算符(SOS)关于提供给SUS的频谱接入类型。提出了一个新的两阶段光谱访问和定价游戏,即两个场景,即:(1)Dupoly包括机会主义,也是一个独占所以和(2)垄断的混合动力,所以提供了esa和OSA。在游戏的第一阶段,非协调的SU选择最大化其实用程序的访问选项。这种对称的N-SU频谱接入选择游戏具有独特的混合策略均衡,其取决于:(1)根据在各种情况下审查的Duopoly或垄断中的SO和(2)在每种情况下可用的带宽。在游戏的第二阶段,SOS计划的带宽定价策略被确定为优化问题的解决方案,最大化SO均衡的SOS累计。提出了两种算法来解决所检查的每个场景中出现的优化问题。在两个频谱市场方案下获得的数值结果证明了所提出的两级频谱访问和定价方案的表现为各种网络参数。

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